Mechanically robust cryogels with injectability and bioprinting supportability for adipose tissue engineering
D Qi, S Wu, MA Kuss, W Shi, S Chung, PT Deegan… - Acta Biomaterialia, 2018
Bioengineered adipose tissues have gained increased interest as a promising
alternative to autologous tissue flaps and synthetic adipose fillers for soft tissue
augmentation and defect reconstruction in clinic. Although many scaffolding …
alternative to autologous tissue flaps and synthetic adipose fillers for soft tissue
augmentation and defect reconstruction in clinic. Although many scaffolding …
[PDF] Simulations of 3D bioprinting: predicting bioprintability of nanofibrillar inks
J Göhl, K Markstedt, A Mark, KMO Håkansson… - Biofabrication, 2018
Abstract 3D bioprinting with bioinks that contain cells show great promise in the
biofabrication of patient specific tissue constructs. To fulfill the multiple requirements
of a bioink, a wide range of materials and bioink composition are being developed …
biofabrication of patient specific tissue constructs. To fulfill the multiple requirements
of a bioink, a wide range of materials and bioink composition are being developed …
Development of a cell-laden thermosensitive chitosan bioink for 3D bioprinting
구종범 - 2018
3D bioprinting is a technology used to deposit cell-laden biomaterials for the
construction of complex tissue. For 3D bioprinting of cell-laden construct, many
materials have been developed such as alginate, fibrin and gelatin. However, most …
construction of complex tissue. For 3D bioprinting of cell-laden construct, many
materials have been developed such as alginate, fibrin and gelatin. However, most …
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